State Key Laboratory of Crop Stress Biology for Arid Areas and College of Life Sciences, Northwest A&F University, Yangling, Shaanxi 712100, China.
Laboratoire de Biologie et Pharmacologie Appliquée, Ecole Normale Supérieure de Cachan, CNRS, 61 Avenue du Président Wilson, 94235 Cachan, France.
J Biol Chem. 2019 Sep 20;294(38):13915-13927. doi: 10.1074/jbc.RA119.009737. Epub 2019 Jul 26.
Replication protein A (RPA) is the major eukaryotic ssDNA-binding protein and has essential roles in genome maintenance. RPA binds to ssDNA through multiple modes, and recent studies have suggested that the RPA-ssDNA interaction is dynamic. However, how RPA alternates between different binding modes and modifies ssDNA structures in this dynamic interaction remains unknown. Here, we used single-molecule FRET to systematically investigate the interaction between human RPA and ssDNA. We show that RPA can adopt different types of binding complexes with ssDNAs of different lengths, leading to the straightening or bending of the ssDNAs, depending on both the length and structure of the ssDNA substrate and the RPA concentration. Importantly, we noted that some of the complexes are highly dynamic, whereas others appear relatively static. On the basis of the above observations, we propose a model explaining how RPA dynamically engages with ssDNA. Of note, fluorescence anisotropy indicated that RPA can also associate with RNA but with a lower binding affinity than with ssDNA. At the single-molecule level, we observed that RPA is undergoing rapid and repetitive associations with and dissociation from the RNA. This study may provide new insights into the rich dynamics of RPA binding to ssDNA and RNA.
复制蛋白 A(RPA)是主要的真核 ssDNA 结合蛋白,在基因组维护中具有重要作用。RPA 通过多种模式与 ssDNA 结合,最近的研究表明,RPA-ssDNA 相互作用是动态的。然而,在这种动态相互作用中,RPA 如何在不同的结合模式之间交替以及修饰 ssDNA 结构仍然未知。在这里,我们使用单分子 FRET 系统地研究了人 RPA 与 ssDNA 之间的相互作用。我们表明,RPA 可以与不同长度的 ssDNA 形成不同类型的结合复合物,导致 ssDNA 的拉直或弯曲,这取决于 ssDNA 底物的长度和结构以及 RPA 的浓度。重要的是,我们注意到一些复合物是高度动态的,而另一些则显得相对静态。基于上述观察,我们提出了一个解释 RPA 如何与 ssDNA 动态结合的模型。值得注意的是,荧光各向异性表明,RPA 也可以与 RNA 结合,但结合亲和力低于 ssDNA。在单分子水平上,我们观察到 RPA 与 RNA 快速且反复地结合和解离。这项研究可能为 RPA 与 ssDNA 和 RNA 结合的丰富动力学提供新的见解。